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Phosphorus immobilization in Lake Głęboczek following treatment with polyaluminum chloride

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In 2001-2003, a survey was conducted of the effectiveness of restoration in the heavily eutrophic polymictic Lake Głęboczek, located in Tuchola. The application of the phosphorus inactivation method with polyaluminum chloride PAX 18 resulted in the complete removal of phosphates, and in a considerable (up to 50-60%) reduction of total phosphorus in the lake water. The sorptive capacity of the bottom sediments was enhanced after the restoration, particularly in the top layer (0-5 cm). An increase of the aluminum content and of mineral forms of phosphorus was observed, mainly the aluminum-bound fraction (at its greatest, by over 330%). The amount of mobile phosphorus in the sediments decreased by 40%. The evidence of the durable immobilization of phosphorus in the aquatic ecosystem was the limited phosphorus release from the bottom sediments. This was confirmed by a significant decrease of total phosphorus in the interstitial waters (from 4-6 mg dm-3 to 2-3 mg dm-3), and by a practically complete removal of phosphates from the near-bottom waters.
Rocznik
Strony
99--105
Opis fizyczny
bibliogr. 18 poz., tab., wykr.
Twórcy
autor
  • Department of Environment Protection Engineering University of Warmia and Mazury ul. Prawocheńskiego 1, 10-957 Olsztyn, Poland, michal.lopata@uwm.edu.pl
Bibliografia
  • Boström B., Andersen M., Fleischer S., Jansson M., 1988, Exchange of phosphorus across the sediment - water interface, Hydrobiologia, 170: 229-44
  • Cooke G., Welch E., Martin A., Fulmer D., Hyde J., Schrieve G., 1993, Effectiveness of Al, Ca, Fe salts for control of internal phosphorus loading in shallow and deep lakes, Hydrobiologia, 253: 323-35
  • Forsberg C., 1989, Importance of sediments in understanding nutrient cyclings in lakes, Hydrobiologia, 176/177: 263-77
  • Gawrońska H., Brzozowska R., Grochowska J., Lossow K., 2001, Effectiveness of PAX and PIX coagulants in phosphorus reduction in a lake - laboratory experiments, Limnological Review, 1: 73-82
  • Gawrońska H., Lossow K., Grochowska J., 2002, Influence of aluminium coagulant PAX on the aquatic environment of Lake Długie in Olsztyn, Limnological Review, 2: 121-30
  • Golachowska J., 1977a, Fractionation and determining mineral phosphorus in bottom sediments of lakes, Rocz. Nauk. Rol. H, 98: 51-63, (in Polish with English summary)
  • Golachowska J., 1977b, Determining total mineral and organic phosphorus content in bottom sediments of lakes, Rocz. Nauk. Rol. H, 98: 39-49, (in Polish with English summary)
  • Golachowska J., 1977c, A simple and rapid method for determining total phosphorus in bottom sediments of lakes, Rocz. Nauk. Rol. H, 98: 27-37, (in Polish with English summary)
  • Januszkiewicz T., 1978, Studies on methodology of chemical analysis of recent lake bottom sediments. Zesz. Nauk. ART Olszt., 8: 3-30 (in Polish with English summary)
  • Klapper H., 2003, Technologies for lake restoration, J, Limnol., 62(1): 73-90
  • Lewandowski J., Schauser I., Hupfer M., 2003, Long term effects of phosphorus precipitations with alum in hypereutrophic Lake Süsser See (Germany), Water Research, 37: 3194-04
  • Łopata M., Gawrońska H., 2006, Effectiveness of the polymictic Lake Głęboczek in Tuchola restoration by the phosphorus inactivation method, Pol. J. Nat. Sci., (in press)
  • Marsden M., 1989, Lake restoration by reducing external phosphorus loading: the influence of sediment phosphorus release, Freshwater Biology, 21: 139-62
  • Ratnaweera H., Ødegaard H., Fettig J., 1992, Coagulation with prepolymerized aluminium salts and their influence on particle and phosphate removal. Wat. Sci. Tech., 26: 1229-37
  • Rydin E., Huser B., Welch E. B., 2000, Amount of phosphorus inactivated by alum treatments in Washington lakes, Limnol. Oceanogr., 45: 226-30
  • Søndegaard M., Jensen J., Jeppesen E., 2003, Role of sediment and internal loading of phosphorus in shallow lakes, Hydrobiologia, 506-509: 135-45
  • Standard methods for the examination of water and wastewater, 1998, American Public Health Association, Washington, 20-th ed.
  • Zdanowski B., 1983, Ecological characteristics of lakes in north-eastern Poland versus their trophic gradient. Part IV. Chemistry of bottom sediments in 37 lakes, Ekol. Pol., 31(2): 309-31, (in Polish with English summary)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0012-0015
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